Abiola Gboyega Kehinde | Renewable Energy | Best Researcher Award

Mr. Abiola Gboyega Kehinde | Renewable Energy | Best Researcher Award 

Mr. Abiola Gboyega Kehinde | Renewable Energy | PhD Researcher at University of Cape Town | South Africa

Mr. Abiola Gboyega Kehinde is a distinguished scholar and researcher whose academic journey reflects an exceptional commitment to advancing renewable energy, biogas innovation, and sustainable energy systems. He began his educational path with a Bachelor of Science in Mechanical Engineering from Olabisi Onabanjo University, where his outstanding final-year project on the design and fabrication of an improved mini cooling tower demonstrated early innovation and practical impact. Building on this strong foundation, he pursued a Master’s degree in Oil and Gas Management at South America University, Delaware, focusing his research on the critical issue of sabotage in the oil and gas sector in Nigeria. He further broadened his expertise by earning a Master’s degree in Mechanical Engineering from Stellenbosch University, where he undertook a feasibility study of once-through cooling systems for solar thermal power plants, an area of great importance for sustainable energy transitions. Currently, he is a Ph.D. candidate in Chemical Engineering at the University of Cape Town, undertaking groundbreaking research on the Technology Innovation System analysis of biogas in South Africa, with the goal of developing innovative pathways for commercialization and energy transition. Professionally, Mr. Kehinde has gained substantial experience as a researcher and energy analyst in leading South African institutions including the University of the Western Cape, Cape Peninsula University of Technology, Stellenbosch University, and the Passenger Rail Agency of South Africa Energy Research Chair. In these roles, he has contributed to projects on renewable energy systems, solar-powered refrigerated trucks, regional innovation systems, and sustainable transport solutions, often engaging with policymakers, industry stakeholders, and academic collaborators. His research interests span renewable energy, energy policy, climate and sustainability transitions, computational fluid dynamics, system engineering, project management, and environmental data analysis. He possesses strong research skills in data modeling, system design, life cycle assessment, and policy analysis, with proficiency in tools such as Power BI, MATLAB, and Autodesk Inventor. Mr. Kehinde’s work has been disseminated through peer-reviewed journal articles, Scopus-indexed conference papers, and invited presentations at international forums, making meaningful contributions to global conversations on clean energy and sustainability. He has received recognition for his academic excellence, including conference acceptances at prestigious energy forums such as SASEC and the International Solid Waste Association World Congress. With a growing portfolio of publications in Q1 journals such as Energy Research and Social Science, Mr. Kehinde is increasingly recognized as an emerging voice in sustainable energy research. In conclusion, Mr. Abiola Gboyega Kehinde is a forward-looking researcher whose academic qualifications, professional achievements, and dedication to impactful science position him as a future leader in renewable energy and climate innovation, making him highly deserving of international recognition and awards.

Profile: ORCID

Featured Publications

  1. Subdued by wind and solar? A comprehensive analysis of barriers to biogas technology uptake – 2025 – Citations: 5

  2. Exploring niches for once-through cooling of Solar Thermal Power Plant – 2020 – Citations: 18

  3. Effects of sabotage in Oil and Gas Sector in Nigeria – 2018 – Citations: 12

  4. Design and Fabrication of an Improved Mini Cooling Tower for Nigerian Industries – 2015 – Citations: 22

  5. A review of different technologies for refrigerated trucks – 2022 – Citations: 7

  6. Feasibility study of once-through cooling for a 50 MW Solar Thermal Power Plant on/near the lower Orange River – 2019 – Citations: 15

  7. The roles of Mechanical Engineering in National Building under Agriculture – 2013 – Citations: 4

 

Zhuwei Xie | Environment | Best Researcher Award

Dr. Zhuwei Xie | Environment | Best Researcher Award

Dr. Zhuwei Xie | Environment | Postdoctoral Researcher at Guangzhou University | China

Dr. Xie Zhuwei is a distinguished academic and researcher affiliated with Guangzhou University, China. With a strong foundation in environmental engineering and fluid mechanics, Dr. Xie has emerged as a key contributor in the field of industrial air pollution control. His work centers around developing advanced atomization technologies, particularly targeting coal dust suppression and improving environmental health in industrial zones. Dr. Xie has earned a reputation for his technical precision and commitment to applied research that bridges theory with practical solutions. With a portfolio of impactful publications and international collaborations, he continues to shape the future of sustainable industrial practices through both innovation and mentorship.

Academic Profile:

Scopus

Education:

Dr. Xie Zhuwei completed his doctoral studies in environmental engineering, where he focused on fluid dynamics and particulate control systems. His academic training laid a strong theoretical and technical foundation, allowing him to pursue complex, solution-driven research in aerosol behavior, atomization efficiency, and the design of environmental control systems. He has been actively engaged with academic communities, presenting his research in various scholarly settings and staying aligned with current advances in engineering science. His formal education has been complemented by continuous professional development through certifications and participation in academic consortia.

Experience:

Dr. Xie Zhuwei brings extensive academic and research experience from his role at Guangzhou University. His professional journey includes supervising student research, contributing to interdisciplinary projects, and managing lab-based environmental simulations. His involvement in collaborative projects, particularly with international research teams, reflects his global academic engagement. Dr. Xie has been instrumental in translating academic research into field-deployable technologies, especially in the areas of air quality management and environmental hazard mitigation. He also contributes to peer review for reputable journals, further indicating his active participation in the scholarly ecosystem. Through these roles, he has influenced both policy discussions and industrial practices in environmental engineering.

Research Interest:

Dr. Xie Zhuwei’s research focuses primarily on atomization technologies for industrial air pollution control. His core areas of interest include pressure atomization nozzle design, aerosol physics, and fluid-structure interactions in environmental systems. He is especially interested in optimizing atomizer performance to improve efficiency in coal dust control processes. His research also explores computational fluid dynamics (CFD) for simulating particle behavior and evaluating nozzle effectiveness in real-world scenarios. By integrating experimental data with theoretical models, Dr. Xie aims to develop low-cost, high-efficiency systems that support sustainable development goals and occupational health standards in industrial settings.

Award:

Dr. Xie Zhuwei has received multiple recognitions within his institution for academic excellence and impactful research. His contributions to the field of air pollution control technologies have earned him nominations for academic honors and research funding. He has been an invited member of professional organizations such as IEEE and ACM, highlighting his standing within the global academic community. His leadership in research teams and ability to drive innovation through applied engineering solutions position him as a strong contender for international research awards. These recognitions reflect not only his technical achievements but also his dedication to improving societal outcomes through science.

Selected Publications:

  • “Atomization characteristics and axis correction coefficient of pressure atomizing nozzle for coal dust control” (2025)

Conclusion:

Dr. Xie Zhuwei exemplifies academic excellence through his research contributions, commitment to sustainable technologies, and leadership in environmental engineering. His extensive work on atomization and air pollution control directly supports industrial safety and environmental sustainability. With a growing network of collaborations, a solid publication record, and continued innovation in applied research, Dr. Xie is well-positioned to contribute meaningfully to global engineering challenges. His future work is expected to expand further into interdisciplinary fields, contributing to advanced environmental monitoring systems and policy-relevant technologies. Dr. Xie remains a committed academic with clear potential for leadership in international research initiatives.

 

 

Juan-Carlos Lozano-Medina | Energy and environment | Best Researcher Award

Prof. Juan-Carlos Lozano-Medina | Energy and environment | Best Researcher Award

Assistant Professor | University of Las Palmas de Gran Canaria | Spain

Strengths

  1. Relevant Scientific Production:
    • Juan Carlos Lozano Medina has published several scientific articles in recognized journals such as “Revista de Ingeniería Dyna,” “Water,” and “Sustainability.” These publications cover relevant topics like carbon footprint optimization, energy storage, and alternative studies for power plants, indicating high-quality and current research.
  2. Participation in R&D Projects:
    • He has participated in innovative educational projects and research, such as the project on laboratories as active learning environments. This project reflects a focus on improving education and practical application of scientific concepts, which is valuable for both academia and industry.
  3. Conference Contributions:
    • Presenting papers at international and national conferences, such as “InnoeducaTIC” and “ECOS,” shows his commitment to disseminating knowledge and participating in global academic discussions. These presentations are a clear indication of his involvement in the scientific community.
  4. Diverse Teaching Experience:
    • His involvement in teaching various subjects related to thermal and energy engineering demonstrates extensive experience in training future professionals in crucial fields.

Areas for Improvement

  1. Greater Diversity in Publications:
    • While the quality of his publications is high, he could benefit from greater diversity in publication types. For instance, exploring publications in books, book chapters, or special editions could broaden his impact.
  2. Increase International Collaboration:
    • Although he has participated in international conferences, the number of collaborations with researchers or institutions outside his country is limited. Expanding international collaboration could enrich his research and open up new funding and co-authorship opportunities.
  3. Seek More Funded Projects:
    • Although he has participated in funded projects, he could seek additional opportunities to lead or collaborate on projects with larger budgets or in emerging research areas. This would not only provide more resources for his work but also greater visibility.
  4. Enhance Social and Community Impact:
    • Encouraging practical application of his research in the local community or industry could increase the impact of his work. This might include collaborating with local businesses to solve specific problems or creating initiatives for scientific outreach in the community.

Conclusion

Juan Carlos Lozano Medina demonstrates a solid track record in research and teaching, with relevant publications and active participation in projects and conferences. To optimize his candidacy for the “Research for Best Researcher Award,” he should consider expanding his international reach, diversifying his types of publications, seeking larger funding opportunities, and increasing the impact of his work on the community and industry. These actions would not only strengthen his profile but also contribute to greater recognition in the academic and scientific spheres.

Short Biography

Juan Carlos Lozano Medina is an Associate Professor at the University of Las Palmas de Gran Canaria, specializing in engineering with a focus on energy and thermal systems. With a strong background in both teaching and research, Lozano Medina is actively involved in advancing the field of engineering through innovative projects and scientific publications. His expertise and contributions have significantly impacted both academic and practical applications in engineering. 🌟

Profile

SCOPUS

Education

Juan Carlos Lozano Medina holds a degree in Chemical Engineering and has accumulated extensive academic and professional experience in various engineering disciplines. He has been instrumental in shaping the curriculum and advancing the educational standards in his field. 📚

Experience

Since February 2013, Lozano Medina has been serving as an Associate Professor in the Department of Processes at the School of Industrial and Civil Engineering at the University of Las Palmas de Gran Canaria. His teaching responsibilities include courses on Energy Engineering, Marine Diesel Engines, and Thermal Systems Design, among others. 🏛️

Research Interests

His research interests lie in energy production, carbon footprint reduction, and innovative educational methodologies. Lozano Medina’s work focuses on optimizing energy systems and exploring sustainable solutions for power generation, with a particular emphasis on the Canary Islands’ unique energy challenges. 🔬

Awards

Juan Carlos Lozano Medina has been recognized for his contributions to innovative educational projects and research in energy systems. His work has been acknowledged through various academic and research awards, reflecting his impact on both fields. 🏆

Publications

  1. Study of Different Alternatives for Power Plants in the Canary Islands
    Revista de Ingeniería Dyna, March 1, 2024.
  2. Energy Production in Gran Canaria with PHES and SWRO
    Water, February 2, 2024.
  3. Optimization of Carbon Footprint Reduction in Island Electricity Systems
    Sustainability, January 30, 2024.